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Ionic Liquid-Based Non-Aqueous Electrolytes for Nickel/Metal Hydride Batteries

机译:镍/金属氢化物电池的离子液体基非水电解质

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The voltage of an alkaline electrolyte-based battery is often limited by the narrow electrochemical stability window of water (1.23 V). As an alternative to water, ionic liquid (IL)-based electrolyte has been shown to exhibit excellent proton conducting properties and a wide electrochemical stability window, and can be used in proton conducting batteries. In this study, we used IL/acid mixtures to replace the 30 wt % KOH aqueous electrolyte in nickel/metal hydride (Ni/MH) batteries, and verified the proton conducting character of these mixtures through electrochemical charge/discharge experiments. Dilution of ILs with acetic acid was found to effectively increase proton conductivity. By using 2 M acetic acid in 1-ethyl-3-methylimidazolium acetate, stable charge/discharge characteristics were obtained, including low charge/discharge overpotentials, a discharge voltage plateau at ~1.2 V, a specific capacity of 161.9 mAh·g ?1 , and a stable cycling performance for an AB 5 metal hydride anode with a (Ni,Co,Zn)(OH) 2 cathode.
机译:碱性电解质基电池的电压通常受到水(1.23 V)狭窄的电化学稳定性窗口的限制。作为水的替代品,已显示出基于离子液体(IL)的电解质具有出色的质子传导性能和宽的电化学稳定性窗口,可用于质子传导电池。在这项研究中,我们使用IL /酸混合物代替了镍/金属氢化物(Ni / MH)电池中30 wt%的KOH水性电解质,并通过电化学充电/放电实验验证了这些混合物的质子传导特性。发现用乙酸稀释ILs可有效增加质子传导性。通过在1-乙基-3-甲基咪唑乙酸盐中使用2 M乙酸,可获得稳定的充电/放电特性,包括低的充电/放电过电位,〜1.2 V的放电电压平稳值,比容量161.9 mAh·g?1 ,以及具有(Ni,Co,Zn)(OH)2阴极的AB 5金属氢化物阳极的稳定循环性能。

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